A wastewater detection reaction separation device

By designing a wastewater detection, reaction, and separation device that self-regulates the changes in flocculant spraying and stirring intensity, the problem of fixed stirring intensity affecting flocculant mixing was solved, achieving efficient mixing and separation of flocculant and wastewater.

CN120794137BActive Publication Date: 2025-11-28SICHUAN YANGZISEN ENVIRONMENTAL PROTECTION EQUIP CO LTD
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Patent Information

Application Number
CN202511288165.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-09-10
Publication Date
2025-11-28
Estimated Expiration
2045-09-10

AI Technical Summary

Technical Problem

Existing stirring methods cannot adjust the stirring intensity according to the time when the flocculant is dropped into the water, resulting in insufficient mixing of the flocculant and wastewater or the dispersal of flocculent substances, which affects the wastewater separation effect.

Method used

A wastewater detection, reaction, and separation device was designed, comprising a flocculant addition component, a self-adjusting stirring component, and a stirring component. Through the cooperation of a sliding frame and rollers, the flocculant's self-adjusting spraying and stirring intensity are achieved, ensuring that the flocculant and wastewater are fully mixed.

Benefits of technology

It improves the mixing reaction effect between flocculant and wastewater, prevents flocculant waste, enhances the mixing range and efficiency, reduces the breakage of flocculent materials, and improves the wastewater separation effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a wastewater detection reaction and separation device, relates to the technical field of wastewater detection and separation, and is characterized in that the upper end face of a bottom plate one is fixedly connected with a supporting column one, the upper end face of the supporting column one is fixedly connected with a shell one, the lower end of the shell one is slidably connected with a shell two, the lower end face of the shell two is also slidably connected with the surface of an agitating rod, the lower end surface of the agitating rod is also fixedly connected with the inner wall of an agitating blade, the upper surface of the bottom plate one is fixedly connected with the lower end face of a wastewater tank, a flocculating agent adding assembly is arranged in the shell one, an agitating self-adjusting assembly is arranged in the shell two, and an agitating assembly is arranged in the shell two, so that the existing agitating mode cannot adjust the stirring intensity according to the time when the flocculating agent is dropped into water, the flocculating material generated by the reaction between the flocculating agent and wastewater may be dispersed in the stirring process, and the separation effect on small particles in the wastewater is affected.
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Description

TECHNICAL FIELD

[0001] The present application relates to wastewater detection and separation technology field, specifically to a wastewater detection reaction separation device. BACKGROUND

[0002] Process wastewater detection includes production wastewater and production sewage, which can be divided into papermaking wastewater, textile wastewater, tannery wastewater, pesticide wastewater, metallurgical wastewater, oil refining wastewater, etc. according to the products and processing objects of industrial enterprises; wastewater also has a foul odor, pollutes the air, and causes soil pollution when wastewater seeps into the soil, pollutes surface water when wastewater directly flows into channels, rivers and lakes, and can cause the death or even extinction of aquatic plants and animals if the toxicity is high. The source of wastewater is diverse, and most wastewater usually contains ion groups, insoluble impurities and other pollutants.

[0003] The commonly used method for wastewater detection nowadays is to drop flocculants into the wastewater to change small particles in the wastewater into flocculent substances, and then make them sink to the bottom, and then detect the elements in the upper layer of wastewater. In order to accelerate the mixing of flocculants and wastewater, stirring is usually used to accelerate the mixing of flocculants and wastewater. However, the stirring intensity of the existing stirring method is usually fixed, and the stirring intensity cannot be adjusted according to the time when the flocculants are dropped into the water, which may cause the flocculent substances produced by the reaction of the flocculants in the wastewater to be dispersed during stirring, thereby affecting the separation effect of small particles in the wastewater. SUMMARY

[0004] The purpose of the present application is to provide a wastewater detection reaction separation device to solve the problems raised in the background art.

[0005] To achieve the above-mentioned purpose, the present application provides the following technical scheme: a wastewater detection reaction separation device, comprising a bottom plate one, the upper end surface of the bottom plate one is fixedly connected with a support column one, the upper end surface of the support column one is fixedly connected with an outer shell one, the lower end of the outer shell one is slidably connected with an outer shell two, the lower end surface of the outer shell two is also slidably connected with the surface of the stirring rod, the lower end surface of the stirring rod is also fixedly connected with the inner wall of the stirring blade, the upper surface of the bottom plate one is fixedly connected with the lower end surface of the wastewater tank, and the wastewater detection reaction separation device further comprises the following components:

[0006] A flocculant adding assembly is arranged in the outer shell one;

[0007] A stirring self-adjusting assembly is arranged in the outer shell two;

[0008] A stirring assembly is arranged in the outer shell two.

[0009] The use process comprises the following steps:

[0010] Adding waste water and separating preparation: select a horizontal place, place the bottom plate on the horizontal place, then fill the waste water into the waste water tank, and add a sufficient amount of flocculating agent into the solvent tank;

[0011] Increasing flocculating agent: start the motor to drive the sliding frame to move left and right, so as to drive the nozzle row to move left and right, and when the nozzle row moves to the right, spray flocculating agent, and when the nozzle row moves to the left, do not spray flocculating agent;

[0012] Stirring adjustment: in the process of moving the sliding frame left and right, the sliding plate will also move forward and backward at the same time, so as to drive the rollers to slide on the surface of the ladder column, and correspondingly, when spraying flocculating agent, the rollers are at the end of the ladder column with smaller diameter, and when not spraying flocculating agent, the rollers are at the end of the ladder column with larger diameter, further realizing that the stirring is intense when spraying flocculating agent and slow when not spraying flocculating agent;

[0013] Stirring: start the motor to drive the rotating rod to rotate, further drive the ladder column to rotate through the rollers, and indirectly drive the cam to rotate, so as to drive the stirring rod and stirring blade to move up and down and rotate to stir the waste water in the waste water tank;

[0014] Sampling detection: finally, the upper layer of waste water is taken out, and the waste water is detected by ph and centrifugal treatment.

[0015] Optionally, the flocculating agent adding assembly comprises:

[0016] The bottom plate two is fixedly connected with the groove wall of the slot of the lower end surface of the shell one, the upper end surface of the bottom plate two is fixedly connected with the mounting frame one, the surface of the mounting frame one is fixedly connected with the shell of the motor one, the output end of the motor one is fixedly connected with the rotating shaft one, the surface of the rotating shaft one penetrates through the upper end surface of the bottom plate two, and the lower end surface of the rotating shaft one is further fixedly connected with the gear ring one.

[0017] The upper end surface of the sliding frame one is slidably connected with the lower end surface of the bottom plate two, the upper end surface of the sliding frame one is fixedly connected with the lower end surface of the sliding block one, the upper end surface of the bottom plate two is provided with a through sliding groove one, the groove wall of the sliding groove one is slidably connected with the surface of the sliding block one, the inner wall of the sliding frame one is slidably connected with the side surface of the sliding plate one, the upper end surface of the sliding plate one is provided with a through rounded rectangular gear slot, the gear slot wall of the rounded rectangular gear slot is engaged with the tooth surface of the gear ring one, the lower end surface of the sliding frame one is fixedly connected with the upper end surface of the shell two, and the lower end surface of the shell two is fixedly connected with the outer surface of the nozzle row.

[0018] Optionally, the flocculant adding assembly further comprises:

[0019] The connecting block one is fixedly connected with the upper end surface of the sliding block one, and the upper end surface of the connecting block one is fixedly connected with a piston, and the surface of the piston is slidingly connected with a container, and the outer surface of the container is fixedly connected with the upper end surface of the second bottom plate.

[0020] The outlet end of the one-way valve one is fixedly communicated with the interior of the container, the inlet end of the one-way valve one is fixedly connected with a fixed pipe one, the other end of the fixed pipe one is fixedly communicated with the interior of the solvent tank, the upper end surface of the solvent tank is fixedly communicated with a feeding port, and the lower end surface of the solvent tank is fixedly connected with the upper end surface of the second bottom plate.

[0021] The inlet end of the one-way valve two is fixedly communicated with the interior of the container, the outlet end of the one-way valve two is fixedly connected with a fixed pipe two, the other end of the fixed pipe two is fixedly connected with a hose, and the other end of the hose is fixedly communicated with the surface of the nozzle row.

[0022] Optionally, the agitating self-adjusting assembly comprises:

[0023] The upper end surface of the fixed plate one is fixedly connected with the lower end surface of the sliding frame one, the lower end side surface of the fixed plate one is rotationally connected with a rotating rod one, the surface of the rotating rod one is fixedly connected with the inner wall of the ladder column, the lower end surface of the fixed plate one is further rotationally connected with the end surface of the rotating rod two, the surface of the rotating rod two is fixedly connected with the inner wall of the roller, the surface of the roller is frictionally connected with the surface of the ladder column, the lower end surface of the sliding frame one is further fixedly connected with a mounting rack two, the lower end surface of the mounting rack two is fixedly connected with the shell of the motor two, the output end of the motor two is fixedly connected with a rotating shaft two, and the surface of the rotating shaft two is belt-driven with the surface of the rotating rod two.

[0024] Optionally, the agitating self-adjusting assembly further comprises:

[0025] The upper end surface of the sleeve one is fixedly connected with the lower end surface of the sliding plate one, the inner wall of the sleeve one is slidingly connected with a sliding rack one, the inner wall of the sliding rack one is rotationally connected with the end surface of the roller, the surface of the sliding rack one is further provided with a through slot, the slot wall of the slot is slidingly connected with the surface of the rotating rod one, the upper end surface of the sliding rack one is fixedly connected with a spring one, and the upper end surface of the spring one is fixedly connected with the lower end surface of the sliding plate one.

[0026] Optionally, the agitating assembly comprises:

[0027] The end surface of the cam is fixedly connected with the end surface of the rotating rod one, the end surface of the cam deviating from the end surface of the ladder column is fixedly connected with the end surface of the sliding column one, the surface of the sliding column one is slidingly connected with a sliding frame two, the surface of the sliding frame two is further fixedly connected with a sliding block two, the surface of the sliding block two is fixedly connected with a rotating frame one, the inner wall of the rotating frame one is rotatingly connected with a stirring shaft, the lower end surface of the stirring shaft is fixedly connected with the upper end surface of the stirring rod, and the surface of the stirring rod slidingly penetrates the lower end surface of the shell two.

[0028] Optionally, the stirring assembly further comprises:

[0029] A gear ring two, the inner wall of the gear ring two is fixedly connected with the surface of the stirring shaft, the side surface of the sliding block two is provided with a penetrating slot, the slot wall of the slot is slidingly connected with a straight tooth row, the tooth surface of the straight tooth row is meshingly connected with the tooth surface of the gear ring two, the back tooth surface of the straight tooth row is rotatingly connected with a limiting block, the surface of the limiting block is provided with a penetrating sliding groove, the groove wall of the sliding groove is slidingly connected with a limiting rod, the upper end of the limiting rod is fixedly connected with a fixed block, and the upper end surface of the fixed block is fixedly connected with the lower end surface of the sliding frame one.

[0030] Compared with the prior art, the present application has the following advantages:

[0031] Firstly, the present application indirectly sprays the flocculant on the wastewater in the wastewater tank, thereby preventing the waste of flocculant caused by excessive use, and the nozzle row is also slidingly connected with the sliding frame one, thereby further improving the spraying range of the flocculant and enabling the flocculant to better contact and react with the wastewater.

[0032] Secondly, when the flocculant is sprayed on the wastewater in the wastewater tank, the stirring becomes intense, the mixing and reaction effect of the flocculant and the wastewater is faster, and the stirring becomes gentle when the flocculant is not sprayed on the wastewater in the wastewater tank, thereby reducing the phenomenon of breaking the flocculated substances due to stirring, and further improving the effect of using the flocculant on the wastewater.

[0033] Thirdly, the present application realizes the up-down movement and rotation of the stirring rod and the stirring blade to stir the wastewater in the wastewater tank, thereby enabling the flocculant to better mix with the wastewater, further improving the mixing and reaction effect of the flocculant and the wastewater, and further improving the stirring range of the stirring rod and the stirring blade due to the lateral movement of the sliding frame one, thereby further improving the stirring effect. BRIEF DESCRIPTION OF DRAWINGS

[0034] Figure 1 It is a front view of the structure of the present application.

[0035] Figure 2 It is a plan view of the internal structure of the shell one in the application;

[0036] Figure 3 It is a sectional view of the internal structure of the container in the application;

[0037] Figure 4 It is a bottom view of the internal structure of the shell two in the application;

[0038] Figure 5 It is an enlarged view of the structure at A in the application; Figure 4

[0039] Figure 6 It is a plan view of the sliding plate one structure in the application;

[0040] Figure 7 It is a side view of the agitating self-adjusting assembly structure in the application;

[0041] Figure 8 It is a sectional view of the internal structure of the sleeve one in the application.

[0042] In the figure: 1, bottom plate one; 2, support column one; 3, shell one; 4, feeding port; 5, hose; 6, shell two; 7, nozzle row; 8, waste water tank; 9, solvent tank; 10, fixed pipe one; 11, one-way valve one; 12, one-way valve two; 13, fixed pipe two; 14, sliding groove one; 15, stirring blade; 16, sliding block one; 17, bottom plate two; 18, connecting block one; 19, piston; 20, motor one; 21, mounting frame one; 22, container; 23, sliding frame one; 24, sliding plate one; 25, agitating rod; 26, round rectangular tooth groove; 27, sliding column one; 28, sliding frame two; 29, tooth ring two; 30, cam; 31, rotating frame one; 32, sliding block two; 33, stirring shaft; 34, straight tooth row; 35, limiting block; 36, limiting rod; 37, fixed block; 38, rotating shaft one; 39, tooth ring one; 40, sliding frame one; 41, sleeve one; 42, fixed plate one; 43, rotating rod one; 44, mounting frame two; 45, rotating shaft two; 46, motor two; 47, roller; 48, rotating rod two; 49, ladder column; 50, spring one. DETAILED DESCRIPTION

[0043] The technical solutions in the embodiments of the application will be clearly and completely described below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, rather than all the embodiments of the application. Based on the embodiments in the application, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the application.

[0044] ​Embodiment one, the present embodiment provides a kind of wastewater detection reaction separation device, please refer to Figures 1 to 8 The present embodiment also provides a kind of wastewater detection reaction separation device, the upper end surface of the bottom plate one 1 is fixedly connected with support column one 2, the upper end surface of support column one 2 is fixedly connected with shell one 3, the lower end of shell two 6 is slidably connected with shell one 3, the lower end surface of shell two 6 is also slidably connected with the surface of agitating rod 25, the lower end surface of agitating rod 25 is also fixedly connected with the inner wall of stirring blade 15, the upper surface of bottom plate one 1 is fixedly connected with the lower end surface of wastewater tank 8.

[0045] When using, select a horizontal place, place bottom plate one 1 on horizontal place, then fill wastewater into wastewater tank 8, and add sufficient flocculating agent in solvent tank 9.

[0046] Start motor one 20 to drive sliding frame one 23 to move left and right, to drive nozzle row 7 to move left and right, and when nozzle row 7 moves right, spray flocculating agent, when nozzle row moves left, do not spray flocculating agent.

[0047] Sliding frame one 23 also drives sliding plate one 24 to move forward and backward during moving left and right, to drive roller 47 to slide on the surface of ladder column 49, and correspondingly, when spraying flocculating agent, roller 47 is at the end of ladder column 49 with smaller diameter, when not spraying flocculating agent, roller 47 is at the end of ladder column 49 with larger diameter, to further realize that stirring is violent when spraying flocculating agent, and stirring is slow when not spraying flocculating agent.

[0048] Start motor two 46 to drive rotating rod two 48 to rotate, further drive ladder column 49 to rotate through roller 47, indirectly drive cam 30 to rotate, to drive agitating rod 25 and stirring blade 15 to move up and down and rotate to stir wastewater in wastewater tank 8.

[0049] Finally, take out the upper layer of wastewater, and detect wastewater by ph and centrifugal treatment method.

[0050] The flocculating agent adding assembly is arranged in shell one 3, and the flocculating agent adding assembly comprises:

[0051] Bottom plate two 17, the lower end surface of shell one 3 is provided with through slot, the slot wall of slot is fixedly connected with the side surface of bottom plate two 17, the upper end surface of bottom plate two 17 is fixedly connected with mounting bracket one 21, the surface of mounting bracket one 21 is fixedly connected with the shell of motor one 20, the output end of motor one 20 is fixedly connected with rotating shaft one 38, the surface of rotating shaft one 38 is rotatably through the upper end surface of bottom plate two 17, and the lower end surface of rotating shaft one 38 is also fixedly connected with gear ring one 39.

[0052] The upper end surface of the sliding block 16 is slidably connected with the lower end surface of the bottom plate 17, the upper end surface of the sliding block 23 is fixedly connected with the lower end surface of the sliding block 16, the upper end surface of the bottom plate 17 is provided with a through sliding groove 14, the groove wall of the sliding groove 14 is slidably connected with the surface of the sliding block 16, the inner wall of the sliding block 23 is slidably connected with the side surface of the sliding plate 24, the upper end surface of the sliding plate 24 is provided with a through rounded rectangular tooth groove 26, the tooth groove wall of the rounded rectangular tooth groove 26 is meshed with the tooth surface of the tooth ring 39, the lower end surface of the sliding block 23 is fixedly connected with the upper end surface of the shell 6, and the lower end surface of the shell 6 is fixedly connected with the outer surface of the nozzle row 7.

[0053] The lower end surface of the connecting block 18 is fixedly connected with the upper end surface of the sliding block 16, and the upper end surface of the connecting block 18 is fixedly connected with the piston 19. The surface of the piston 19 is slidably connected with the container 22, and the outer surface of the container 22 is fixedly connected with the upper end surface of the bottom plate 17.

[0054] The outlet end of the one-way valve 11 is fixedly communicated with the interior of the container 22, the inlet end of the one-way valve 11 is fixedly connected with the fixed pipe 10, the other end of the fixed pipe 10 is fixedly communicated with the interior of the solvent tank 9, the upper end surface of the solvent tank 9 is fixedly communicated with the feeding port 4, and the lower end surface of the solvent tank 9 is fixedly connected with the upper end surface of the bottom plate 17.

[0055] The inlet end of the one-way valve 12 is fixedly communicated with the interior of the container 22, the outlet end of the one-way valve 12 is fixedly connected with the fixed pipe 13, the other end of the fixed pipe 13 is fixedly connected with the hose 5, and the other end of the hose 5 is fixedly communicated with the surface of the nozzle row 7.

[0056] In the embodiment, the starting motor 20 drives the rotating shaft 38 to rotate, the rotating shaft 38 rotates to drive the tooth ring 39 to rotate in the rounded rectangular tooth groove 26 on the sliding plate 24, so that the sliding block 23 has the following two motion states:

[0057] One: when the tooth ring 39 is located on the two rounded edges of the rounded rectangular tooth groove 26, the rotation of the tooth ring 39 drives the sliding plate 24 to slide in the sliding block 23, so that the sliding plate 24 moves forward and backward, and the sliding block 23 does not move;

[0058] Two: when the tooth ring 39 is located on the two straight edges of the rounded rectangular tooth groove 26, the rotation of the tooth ring 39 drives the sliding plate 24 and the sliding block 23 to slide together, so as to drive the sliding block 23 to move left and right laterally;

[0059] Further drive the sliding block 16 in the sliding groove 14, then through the connection block 18 drive piston 19 in the container 22, and cooperate with the one-way valve 11 and one-way valve 12 can transport the flocculant in the solvent tank 9 to the nozzle row 7, and then when the piston 19 to the bottom of the container 22, the flocculant is sprayed in the wastewater tank 8 in the wastewater, when the piston 19 to the direction away from the bottom of the container 22, do not spray flocculant treatment of wastewater in the wastewater tank 8.

[0060] The setting of the flocculant adding assembly, by indirectly spraying flocculant on the wastewater in the wastewater tank 8, so as to prevent the waste of flocculant caused by excessive use of flocculant, and the nozzle row 7 is also and the sliding frame 23 together, so as to further improve the spraying range of the flocculant, so that the flocculant can better contact with the wastewater.

[0061] It is worth noting that the stirring self-adjusting assembly is arranged in the shell 6, and the stirring self-adjusting assembly comprises:

[0062] The upper end surface of the fixed plate 42 is fixedly connected with the lower end surface of the sliding frame 23, the lower end surface of the fixed plate 42 is rotatably connected with the end surface of the rotating rod 43, the surface of the rotating rod 43 is fixedly connected with the inner wall of the ladder column 49, the lower end surface of the fixed plate 42 is rotatably connected with the end surface of the rotating rod 48, the surface of the rotating rod 48 is fixedly connected with the inner wall of the roller 47, the surface of the roller 47 is frictionally connected with the surface of the ladder column 49, and the lower end surface of the sliding frame 23 is fixedly connected with the mounting rack 44. The lower end surface of the mounting rack 44 is fixedly connected with the shell of the motor 46, the output end of the motor 46 is fixedly connected with the rotating shaft 45, and the surface of the rotating shaft 45 is belt driven with the surface of the rotating rod 48.

[0063] The upper end surface of the sleeve 41 is fixedly connected with the lower end surface of the sliding plate 24, the inner wall of the sleeve 41 is slidably connected with the sliding rack 40, the inner wall of the sliding rack 40 is rotatably connected with the end surface of the roller 47, the surface of the sliding rack 40 is further provided with a through slot, the slot wall of the slot is slidably connected with the surface of the rotating rod 43, the upper end surface of the sliding rack 40 is fixedly connected with the spring 50, and the upper end surface of the spring 50 is fixedly connected with the lower end surface of the sliding plate 24.

[0064] In the embodiment, the sliding plate 24 is driven to slide in the sliding frame 23 by the rotation of the gear ring 39, further driving the rollers 47 to slide on the surface of the ladder column 49, so that the rotating rod 43 has different rotating speeds, and is used in cooperation with the flocculant adding assembly. When the flocculant is sprayed in the wastewater in the wastewater tank 8, the sliding plate 24 is driven to slide in the sliding frame 23, driving the rollers 47 to slide to the end of the ladder column 49 with smaller diameter, so that the rotating rod 43 rotates faster, and the mixing reaction of the flocculant and the wastewater is more rapid and better. When the flocculant is not sprayed in the wastewater in the wastewater tank 8, the sliding plate 24 is driven to slide in the sliding frame 23, driving the rollers 47 to slide to the end of the ladder column 49 with larger diameter, so that the rotating rod 43 rotates slower, and the mixing reaction of the flocculant and the wastewater is promoted, and the phenomenon of breaking the flocculation material due to stirring is reduced.

[0065] The stirring self-adjusting assembly is arranged to make the stirring more intense when the flocculant is sprayed in the wastewater in the wastewater tank 8, so that the mixing reaction of the flocculant and the wastewater is more rapid and better, and to make the stirring softer when the flocculant is not sprayed in the wastewater in the wastewater tank 8, so that the mixing reaction of the flocculant and the wastewater is promoted, and the phenomenon of breaking the flocculation material due to stirring is reduced, further improving the effect of using the flocculant on the wastewater.

[0066] In the embodiment, the stirring self-adjusting assembly is arranged to make the stirring more intense when the flocculant is sprayed in the wastewater in the wastewater tank 8, so that the mixing reaction of the flocculant and the wastewater is more rapid and better, and to make the stirring softer when the flocculant is not sprayed in the wastewater in the wastewater tank 8, so that the mixing reaction of the flocculant and the wastewater is promoted, and the phenomenon of breaking the flocculation material due to stirring is reduced, further improving the effect of using the flocculant on the wastewater.

[0067] The stirring assembly is arranged in the shell 6, and the stirring assembly comprises:

[0068] The sliding column 27 is fixedly connected with the end surface of the cam 30 and the end surface of the rotating rod 43, the end surface of the cam 30 away from the ladder column 49 is fixedly connected with the end surface of the sliding column 27, the surface of the sliding column 27 is slidingly connected with the sliding frame 28, the surface of the sliding frame 28 is further fixedly connected with the sliding block 32, the surface of the sliding block 32 is fixedly connected with the rotating frame 31, the inner wall of the rotating frame 31 is rotatably connected with the stirring shaft 33, the lower end surface of the stirring shaft 33 is fixedly connected with the upper end surface of the stirring rod 25, and the surface of the stirring rod 25 slidingly penetrates the lower end surface of the shell 6.

[0069] The inner wall of the gear ring two 29 is fixedly connected with the surface of the stirring shaft 33, the side surface of the sliding block two 32 is provided with a through slot, the slot wall of the slot is slidably connected with the straight tooth row 34, the tooth surface of the straight tooth row 34 is meshingly connected with the tooth surface of the gear ring two 29, the back tooth surface of the straight tooth row 34 is rotatably connected with the limiting block 35, the surface of the limiting block 35 is provided with a through sliding groove, the sliding groove wall is slidably connected with the limiting rod 36, the upper end of the limiting rod 36 is fixedly connected with the fixed block 37, and the upper end surface of the fixed block 37 is fixedly connected with the lower end surface of the sliding frame one 23.

[0070] In the embodiment, the rotating rod one 43 is rotated to drive the cam 30 to rotate, the cam 30 is rotated to drive the sliding column one 27 to slide in the sliding frame two 28, and further the sliding block two 32 can be driven to move up and down, in the process that the sliding block two 32 moves up and down, the limiting rod 36 and the limiting block 35 are cooperated to drive the straight tooth row 34 to move transversely relative to the sliding block two 32, so that the straight tooth row 34 drives the gear ring two 29 to rotate, and further drives the stirring shaft 33 to rotate, and further the up-and-down movement and rotation of the stirring rod 25 and the stirring blade 15 can be realized.

[0071] The stirring assembly is arranged, the up-and-down movement and rotation of the stirring rod 25 and the stirring blade 15 are realized to stir the wastewater in the wastewater tank 8, so that the flocculant and the wastewater are better mixed, and further the mixing reaction effect of the flocculant and the wastewater is more rapid, and the stirring rod 25 and the stirring blade 15 also move with the transverse movement of the sliding frame one 23, and further the stirring range of the stirring rod 25 and the stirring blade 15 is improved, so that the stirring effect is better.

[0072] Although the embodiments of the present application have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A wastewater detection reaction separation device, characterized by, The utility model relates to a wastewater treatment device, including bottom plate one (1), agitating rod (25) and stirring blade (15), bottom plate one (1) upper end surface fixedly connected with support column one (2), support column one (2) upper end surface fixedly connected with shell one (3), shell one (3) lower end slidingly connected with shell two (6), shell two (6) lower end surface still with the surface of agitating rod (25) slidingly connected, agitating rod (25) lower end surface still with the inner wall of stirring blade (15) fixedly connected, bottom plate one (1) upper surface with wastewater tank (8) lower end surface fixedly connected, Further comprising: A flocculant adding assembly is arranged in the shell one (3); An agitating self-adjusting assembly is arranged in the shell two (6); An agitating assembly is arranged in the shell two (6); The flocculant adding assembly comprises: A bottom plate two (17) and a motor one (20), a through slot is formed in the lower end surface of the shell one (3), the slot wall of the slot is fixedly connected with the side surface of the bottom plate two (17), the upper end surface of the bottom plate two (17) is fixedly connected with a mounting bracket one (21), the surface of the mounting bracket one (21) is fixedly connected with the shell of the motor one (20), the output end of the motor one (20) is fixedly connected with a rotating shaft one (38), the surface of the rotating shaft one (38) rotates through the upper end surface of the bottom plate two (17), and the lower end surface of the rotating shaft one (38) is fixedly connected with a gear ring one (39); A sliding block one (16) and a nozzle row (7), the upper end surface of the sliding frame one (23) is slidingly connected with the lower end surface of the bottom plate two (17), the upper end surface of the sliding frame one (23) is fixedly connected with the lower end surface of the sliding block one (16), a through sliding groove one (14) is formed in the upper end surface of the bottom plate two (17), the groove wall of the sliding groove one (14) is slidingly connected with the surface of the sliding block one (16), the inner wall of the sliding frame one (23) is slidingly connected with the side surface of a sliding plate one (24), a through rounded rectangular gear slot (26) is formed in the upper end surface of the sliding plate one (24), the gear slot wall of the rounded rectangular gear slot (26) is engaged with the tooth surface of the gear ring one (39), the lower end surface of the sliding frame one (23) is fixedly connected with the upper end surface of the shell two (6), and the lower end surface of the shell two (6) is fixedly connected with the outer surface of the nozzle row (7); The flocculant adding assembly further comprises: A connecting block one (18), the lower end surface of the connecting block one (18) is fixedly connected with the upper end surface of the sliding block one (16), the upper end surface of the connecting block one (18) is fixedly connected with a piston (19), the surface of the piston (19) is slidingly connected with a container (22), and the outer surface of the container (22) is fixedly connected with the upper end surface of the bottom plate two (17); One-way valve one (11) and solvent tank (9), the outlet end of the one-way valve one (11) is fixedly communicated with the inside of the container (22), the inlet end of the one-way valve one (11) is fixedly connected with fixed pipe one (10), the other end of the fixed pipe one (10) is fixedly communicated with the inside of the solvent tank (9), the upper end surface of the solvent tank (9) is fixedly communicated with the feed inlet (4), the lower end surface of the solvent tank (9) is fixedly connected with the upper end surface of the bottom plate two (17); One-way valve two (12), the inlet end of the one-way valve two (12) is fixedly communicated with the inside of the container (22), the outlet end of the one-way valve two (12) is fixedly connected with fixed pipe two (13), the other end of the fixed pipe two (13) is fixedly connected with hose (5), the other end of the hose (5) is fixedly communicated with the surface of the nozzle row (7).

2. The wastewater detection reaction separation device according to claim 1, characterized in that: The agitating self-adjusting assembly comprises a fixed plate one (42) and a ladder column (49), the upper end surface of the fixed plate one (42) is fixedly connected with the lower end surface of the sliding frame one (23), the lower end surface of the fixed plate one (42) is rotatably connected with a rotating rod one (43), the surface of the rotating rod one (43) is fixedly connected with the inner wall of the ladder column (49), and the lower end surface of the fixed plate one (42) is also rotatably connected with the end surface of a rotating rod two (48).

3. The wastewater detection reaction separation device according to claim 2, characterized in that: The wastewater detection reaction separation device further comprises a roller (47), the surface of the rotating rod two (48) is fixedly connected with the inner wall of the roller (47), the surface of the roller (47) is frictionally connected with the surface of the ladder column (49), the lower end surface of the sliding frame one (23) is also fixedly connected with a mounting rack two (44), the lower end surface of the mounting rack two (44) is fixedly connected with the shell of a motor two (46), the output end of the motor two (46) is fixedly connected with a rotating shaft two (45), and the surface of the rotating shaft two (45) is belt-driven with the surface of the rotating rod two (48).

4. The wastewater detection reaction separation device according to claim 3, characterized in that: The agitating self-adjusting assembly further comprises a sleeve one (41), the upper end surface of the sleeve one (41) is fixedly connected with the lower end surface of the sliding plate one (24), the inner wall of the sleeve one (41) is slidably connected with a sliding rack one (40), the inner wall of the sliding rack one (40) is rotatably connected with the end surface of the roller (47), the surface of the sliding rack one (40) is also provided with a through slot, the slot wall of the slot is slidably connected with the surface of the rotating rod one (43), the upper end surface of the sliding rack one (40) is fixedly connected with a spring one (50), and the upper end surface of the spring one (50) is fixedly connected with the lower end surface of the sliding plate one (24).

5. A device for detecting and separating reactions in wastewater according to claim 4, characterized in that: The stirring assembly includes a sliding column one (27) and a cam (30), the end surface of the cam (30) is fixedly connected with the end surface of the rotating rod one (43), the end surface of the cam (30) away from the ladder column (49) is fixedly connected with the end surface of the sliding column one (27), the surface of the sliding column one (27) is slidingly connected with a sliding frame two (28), the surface of the sliding frame two (28) is further fixedly connected with a sliding block two (32), the surface of the sliding block two (32) is fixedly connected with a rotating frame one (31), the inner wall of the rotating frame one (31) is rotatably connected with a stirring shaft (33), the lower end surface of the stirring shaft (33) is fixedly connected with the upper end surface of the stirring rod (25), and the surface of the stirring rod (25) slidingly penetrates the lower end surface of the shell two (6).

6. The wastewater detection reaction separation device according to claim 5, characterized in that: The stirring assembly further includes a gear ring two (29), the inner wall of the gear ring two (29) is fixedly connected with the surface of the stirring shaft (33), the side surface of the sliding block two (32) is provided with a through slot, the slot wall of the slot is slidingly connected with a straight tooth row (34), the tooth surface of the straight tooth row (34) is meshingly connected with the tooth surface of the gear ring two (29), the back tooth surface of the straight tooth row (34) is rotatably connected with a limiting block (35), the surface of the limiting block (35) is provided with a through sliding groove, the sliding groove is slidingly connected with a limiting rod (36), the upper end of the limiting rod (36) is fixedly connected with a fixed block (37), and the upper end surface of the fixed block (37) is fixedly connected with the lower end surface of the sliding frame one (23).

Citation Information

Patent Citations

  • Sewage treatment sludge discharge device with stirring mechanism

    CN222948178U